Department of Molecular Biophysics and Biochemistry, Yale University, New Haven, CT 06520-8114, USA.
Department of Viticulture and Enology, University of California, Davis, Davis, CA 95616, USA.
Nucleic Acids Res. 2022 Apr 22;50(7):3998-4011. doi: 10.1093/nar/gkac164.
The DEAD-box protein Dbp5 is essential for RNA export, which involves regulation by the nucleoporins Gle1 and Nup159 at the cytoplasmic face of the nuclear pore complex (NPC). Mechanistic understanding of how these nucleoporins regulate RNA export requires analyses of the intrinsic and activated Dbp5 ATPase cycle. Here, kinetic and equilibrium analyses of the Saccharomyces cerevisiae Gle1-activated Dbp5 ATPase cycle are presented, indicating that Gle1 and ATP, but not ADP-Pi or ADP, binding to Dbp5 are thermodynamically coupled. As a result, Gle1 binds Dbp5-ATP > 100-fold more tightly than Dbp5 in other nucleotide states and Gle1 equilibrium binding of ATP to Dbp5 increases >150-fold via slowed ATP dissociation. Second, Gle1 accelerated Dbp5 ATPase activity by increasing the rate-limiting Pi release rate constant ∼20-fold, which remains rate limiting. These data show that Gle1 activates Dbp5 by modulating ATP binding and Pi release. These Gle1 activities are expected to facilitate ATPase cycling, ensuring a pool of ATP bound Dbp5 at NPCs to engage RNA during export. This work provides a mechanism of Gle1-activation of Dbp5 and a framework to understand the joint roles of Gle1, Nup159, and other nucleoporins in regulating Dbp5 to mediate RNA export and other Dbp5 functions in gene expression.
DEAD 框蛋白 Dbp5 对于 RNA 输出是必需的,这涉及到核孔复合物(NPC)细胞质面的核孔蛋白 Gle1 和 Nup159 的调节。了解这些核孔蛋白如何调节 RNA 输出需要对固有和激活的 Dbp5 ATP 酶循环进行分析。在这里,展示了酿酒酵母 Gle1 激活的 Dbp5 ATP 酶循环的动力学和平衡分析,表明 Gle1 和 ATP,但不是 ADP-Pi 或 ADP,与 Dbp5 的结合在热力学上是偶联的。结果,Gle1 与 Dbp5-ATP 的结合比 Dbp5 在其他核苷酸状态下紧密 100 多倍,并且通过减慢 ATP 解离,Gle1 对 Dbp5 结合 ATP 的平衡结合增加了 150 多倍。其次,Gle1 通过增加限速 Pi 释放速率常数约 20 倍来加速 Dbp5 ATP 酶活性,该速率仍然是限速的。这些数据表明,Gle1 通过调节 ATP 结合和 Pi 释放来激活 Dbp5。这些 Gle1 活性有望促进 ATP 酶循环,确保 NPC 处有结合 ATP 的 Dbp5 池,以在输出过程中与 RNA 结合。这项工作提供了 Gle1 激活 Dbp5 的机制,并为理解 Gle1、Nup159 和其他核孔蛋白在调节 Dbp5 以介导 RNA 输出和其他 Dbp5 在基因表达中的功能方面的联合作用提供了一个框架。